Compatibility among Polymerase Subunit Proteins Is a Restricting Factor in Reassortment between Equine H7N7 and Human H3N2 Influenza Viruses
Open Access
- 1 December 2008
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 82 (23), 11880-11888
- https://doi.org/10.1128/jvi.01445-08
Abstract
Reassortment is an important driving force for influenza virus evolution, and a better understanding of the factors that affect this process could improve our ability to respond to future influenza pandemics and epidemics. To identify factors that restrict the generation of reassortant viruses, we cotransfected human embryonic kidney cells with plasmids for the synthesis of viral RNAs of both A/equine/Prague/1/56 (Prague; H7N7) and A/Yokohama/2017/03 (Yokohama; H3N2) viruses together with the supporting protein expression plasmids. Of the possible 256 genotypes, we identified 29 genotypes in 120 randomly plaque-picked reassortants examined. Analyses of these reassortants suggested that the formation of functional ribonucleoprotein (RNP) complexes was a restricting factor, a finding that correlated with the activities of RNP complexes composed of different combinations of the proteins from the two viruses, as measured in a minigenome assay. For at least one nonfunctional RNP complex (i.e., Prague PB2, Prague PB1, Yokohama PA, and Prague NP), the lack of activity was due to the inability of the three polymerase subunit proteins to form a heterotrimer. Adaptation of viruses possessing a gene encoding a chimera of the PA proteins of the two viruses and the remaining genes from Prague virus resulted in compensatory mutations in the PB2 and/or PA protein. These results indicate substantial incompatibility among the gene products of the two test viruses, a critical role for the RNP complex in the generation of reassortant viruses, and a functional interaction of PB2 and PA.Keywords
This publication has 62 references indexed in Scilit:
- Growth of H5N1 Influenza A Viruses in the Upper Respiratory Tracts of MicePLoS Pathogens, 2007
- Differential Polymerase Activity in Avian and Mammalian Cells Determines Host Range of Influenza VirusJournal of Virology, 2007
- Identification of the domains of the influenza A virus M1 matrix protein required for NP binding, oligomerization and incorporation into virionsJournal of General Virology, 2007
- Contributions of Two Nuclear Localization Signals of Influenza A Virus Nucleoprotein to Viral ReplicationJournal of Virology, 2007
- The mechanism by which influenza A virus nucleoprotein forms oligomers and binds RNANature, 2006
- Amino Acid Residues in the N-Terminal Region of the PA Subunit of Influenza A Virus RNA Polymerase Play a Critical Role in Protein Stability, Endonuclease Activity, Cap Binding, and Virion RNA Promoter BindingJournal of Virology, 2006
- Lack of transmission of H5N1 avian–human reassortant influenza viruses in a ferret modelProceedings of the National Academy of Sciences, 2006
- The PA Subunit Is Required for Efficient Nuclear Accumulation of the PB1 Subunit of the Influenza A Virus RNA Polymerase ComplexJournal of Virology, 2004
- Nuclear transport of influenza virus ribonucleoproteins: The viral matrix protein (M1) promotes export and inhibits importCell, 1991
- Site-directed mutagenesis by overlap extension using the polymerase chain reactionGene, 1989